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首页> 外文期刊>Biochimica et Biophysica Acta. Gene Regulatory Mechanisms >DNA Demethylation by DNMT3A and DNMT3B in vitro and of Methylated Episomal DNA in Transiently Transfected Cells
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DNA Demethylation by DNMT3A and DNMT3B in vitro and of Methylated Episomal DNA in Transiently Transfected Cells

机译:DNMT3A和DNMT3B在体外和DNMT3B中的DNA去甲基化,在短期转染细胞中的甲基化的重组DNA

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The DNA methylation program in vertebrates is an essential part of the epigenetic regulatory cascade of development, cell differentiation, and progression of diseases including cancer. While the DNA methyltransferases (DNMTs) are responsible for the in vivo conversion of cytosine (C) to methylated cytosine (5mC), demethylation of 5mC on cellular DNA could be accomplished by the combined action of the ten-eleven translocation (TET) enzymes and DNA repair. Surprisingly, the mammalian DNMTs also possess active DNA demethylation activity in vitro in a Ca2+ - and redox conditions -dependent manner, although little is known about its molecular mechanisms and occurrence in a cellular context. In this study, we have used LC-MS/MS to track down the fate of the methyl group removed from 5mC on DNA by mouse DNMT3B in vitro and found that it becomes covalently linked to the DNA methylation catalytic cysteine of the enzyme. We also show that Ca2+ homeostasis-dependent but TET1/TET2/TET3/TDG-independent demethylation of methylated episomal DNA by mouse DNMT3A or DNMT3B can occur in transfected human HEK 293 and mouse embryonic stem (ES) cells. Based on these results, we present a tentative working model of Ca2+ and redox conditions-dependent active DNA demethylation by DNMTs. Our study substantiates the potential roles of the vertebrate DNMTs as double-edged swords in DNA methylation-demethylation during Ca2+-dependent physiological processes.
机译:脊椎动物中的DNA甲基化程序是表观遗传调节级联的发展,细胞分化和疾病的进展的重要组成部分。虽然DNA甲基转移酶(DNMTS)对胞嘧啶(C)的体内转化为甲基化胞嘧啶(5MC),但可以通过十一十一易位(TET)酶的组合作用来实现5MC对细胞DNA的去甲基化。 DNA修复。令人惊讶的是,哺乳动物DNMTS在Ca2 +和氧化还原条件 - 依赖性的方式中也具有活性DNA去甲基化活性,尽管关于其分子机制并且在细胞背景下发生的情况很少。在该研究中,我们使用LC-MS / MS在体外通过小鼠DNMT3B追踪从5MC上除去5MC的甲基的命运,发现它与酶的DNA甲基化催化半胱氨酸共价连接。我们还表明,通过小鼠DNMT3A或DNMT3B依赖于甲基化的重组DNA的TET1 / TET2 / TET3 / TDG依赖性去甲基化,可以在转染的人HEK 293和小鼠胚胎茎(ES)细胞中发生。基于这些结果,我们介绍了DNMTS依赖于CA2 +和氧化还原条件的初步工作模型。我们的研究证实了脊椎动物DNMTS在CA2 +依赖性生理过程中DNA甲基化 - 去甲基化中的双刃剑的潜在作用。

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